Magnetic Fields in Laser-Plasma Interactions

2022 IEEE International Conference on Plasma Science (ICOPS)(2022)

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摘要
Laser-foil interactions provide a simple platform for studying physics related to hohlraums and direct-drive ICF. Proton radiography of these systems allows for probing to densities greater than critical, where the temperature gradients are steep and classical transport breaks down [1] . Quantification of magnetic flux generation around a laser-target interaction confirms that the plasma is non-local; a Biermann suppression term must be included in Gorgon simulations [3] , [4] to match the experimental magnetic flux [2] . Higher magnetic flux generation is found as the target Z is increased, due to shorter electron mean-free paths. These results allow for improved estimates for the impact of self-generated fields on both direct-drive ablation fronts and hohlraums. A direct measurement of Nernst in a laser absorption region is also sought, as this would further constrain the impact of selfgenerated magnetic fields.
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关键词
laser-target interaction,Biermann suppression term,Gorgon simulations,experimental magnetic flux,higher magnetic flux generation,shorter electron mean-free paths,self-generated fields,direct-drive ablation fronts,hohlraums,selfgenerated magnetic fields,laser-plasma interactions,laser-foil interactions,simple platform,studying physics,direct-drive ICF,proton radiography,temperature gradients,classical transport breaks
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